DocumentCode
2349417
Title
Improving Reliability in NoCs by Application-Specific Mapping Combined with Adaptive Fault-Tolerant Method in the Links
Author
Kologeski, Anelise ; Concatto, Caroline ; Carro, Luigi ; Kastensmidt, Fernanda Lima
Author_Institution
UFRGS-Univ. Fed. do Rio Grande do Sul (PGMICRO, Porto Alegre, Brazil
fYear
2011
fDate
23-27 May 2011
Firstpage
123
Lastpage
128
Abstract
A strategy to handle multiple defects in the No Clinks with almost no impact on the communication delay is presented. The fault-tolerant method can guarantee the functionally of the NoC with multiple defects in any link, and with multiple faulty links. The proposed technique uses information from test phase to map the application and to configure fault-tolerant features along the NoC links. Results from an application remapped in the NoC show that the communication delay is almost unaffected, with minimal impact and overhead when compared to a fault-free system. We also show that our proposal has a variable impact in performance while traditional fault-tolerant solution like Hamming Code has a constant impact. Besides our proposal can save among 15% to 100% the energy when compared Hamming Code.
Keywords
Hamming codes; delays; fault tolerance; network-on-chip; NoC link; adaptive fault tolerant method; application-specific mapping; communication delay; fault free system; hamming code; network on chip; reliability; Delay; Fault tolerance; Fault tolerant systems; Power demand; Proposals; Routing; Wires; Adaptive Routing; Data Splitting; Fault Tolerance; Links; Mapping; NoCs;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Symposium (ETS), 2011 16th IEEE European
Conference_Location
Trondheim
ISSN
1530-1877
Print_ISBN
978-1-4577-0483-3
Electronic_ISBN
1530-1877
Type
conf
DOI
10.1109/ETS.2011.62
Filename
5957934
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